Geophysical Approach in the Geological Characterization of Chebabta Dam, Northeast-Algeria

Q3 Environmental Science
Hocine Benhammadi, L. Gouaidia, D. Boubaya, H. Chaffai
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Abstract

industry is not sufficient as the priority goes for domestic use. To meet the increasing population growth and development, the authorities have considered building a new water retaining structure on some major temporary water streams. For this purpose, Chebabta Site on Meskiana Wadi was chosen as the future dam site. It is large enough to store the desired volume of water. This study investigates the conditions of the site and the adequacy of the ground as a foundation for the projected dam. The conditions of the site include the geological structure and mainly the presence of discontinuities in the formation on which the dam will be built, the nature of the lithologies under the foundation and the future lake, and the presence of any hazard. This site characterization is usually carried out using different methods in order to highlight any underground buried problematic structure. In this context, the different geophysical techniques remain the most used ones. Four geophysical methods were used in the case of Chebabta dam site, namely seismic refraction, constant separation traversing (CST), vertical electric sounding (VES) and electric resistivity tomography (ERT). The choice of the techniques and the location of the survey lines was made on the basis of the available geological data. In this sense, profiles were established on both banks of Meskiana Wadi. The obtained results allowed a better characterization of the geological structure, defining the limit between the surface cover and the bedrock, which is, in other words, the limit between the weathered zone and the bedrock. Their respective thicknesses were also determined by seismic refraction and VES. However, ERT succeeded in estimating the thickness of alluvial deposits in the left bank of the Wadi and positioning a fault structure passing at the east of the study area.
阿尔及利亚东北部Chebabta大坝地质特征的地球物理方法
工业是不够的,因为优先考虑的是家庭使用。为配合人口增长和发展,当局已考虑在一些主要的临时河流兴建新的挡水结构。为此,Meskiana Wadi的Chebabta遗址被选为未来的水坝遗址。它足够大,可以储存所需的水量。这项研究调查了场地的条件和地面是否足够作为计划大坝的基础。场地的条件包括地质结构,主要是建造大坝的地层中是否存在不连续,地基和未来湖泊下的岩性性质,以及是否存在任何危险。为了突出任何地下埋有问题的结构,通常使用不同的方法进行场地特征描述。在这种情况下,不同的地球物理技术仍然是最常用的。以Chebabta坝址为例,采用了地震折射、恒距穿越(CST)、垂直电测深(VES)和电阻率层析成像(ERT)四种地球物理方法。技术的选择和测量线的位置是在现有地质资料的基础上作出的。从这个意义上说,在梅斯基亚纳河两岸都建立了剖面。所获得的结果可以更好地表征地质结构,确定地表覆盖物与基岩之间的界限,即风化带与基岩之间的界限。通过地震折射和地震探测确定了它们各自的厚度。然而,ERT成功地估算了瓦底河左岸的冲积层厚度,并定位了研究区东部经过的断裂构造。
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来源期刊
Environmental Research, Engineering and Management
Environmental Research, Engineering and Management Environmental Science-Environmental Engineering
CiteScore
2.40
自引率
0.00%
发文量
32
期刊介绍: First published in 1995, the journal Environmental Research, Engineering and Management (EREM) is an international multidisciplinary journal designed to serve as a roadmap for understanding complex issues and debates of sustainable development. EREM publishes peer-reviewed scientific papers which cover research in the fields of environmental science, engineering (pollution prevention, resource efficiency), management, energy (renewables), agricultural and biological sciences, and social sciences. EREM’s topics of interest include, but are not limited to, the following: environmental research, ecological monitoring, and climate change; environmental pollution – impact assessment, mitigation, and prevention; environmental engineering, sustainable production, and eco innovations; environmental management, strategy, standards, social responsibility; environmental economics, policy, and law; sustainable consumption and education.
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